首页> 外文会议>Conference on Semiconductor Lasers and Applications; 20071112-14; Beijing(CN) >Wavelength Tunable Distributed Bragg Reflector Laser Integrated with Electro-Absorption Modulator by a Combined Method of Selective Area Growth and Quantum Well Intermixing
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Wavelength Tunable Distributed Bragg Reflector Laser Integrated with Electro-Absorption Modulator by a Combined Method of Selective Area Growth and Quantum Well Intermixing

机译:选择性区域生长和量子阱混合的方法结合电吸收调制器的波长可调分布式布拉格反射激光器

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Wavelength tunable electro-absorption modulated distributed Bragg reflector lasers (TEMLs) are promising light source in dense wavelength division multiplexing (DWDM) optical fiber communication system due to high modulation speed, small chirp, low drive voltage, compactness and fast wavelength tuning ability. Thus, increased the transmission capacity, the functionality and the flexibility are provided. Materials with bandgap difference as large as 250nm have been integrated on the same wafer by a combined technique of selective area growth (SAG) and quantum well intermixing (QWI), which supplies a flexible and controllable platform for the need of photonic integrated circuits (PIC). A TEML has been fabricated by this technique for the first time. The component has superior characteristics as following: threshold current of 37mA, output power of 3.5mW at 100mA injection and 0V modulator bias voltage, extinction ratio of more than 20 dB with modulator reverse voltage from 0V to 2V when coupled into a single mode fiber, and wavelength tuning range of 4.4nm covering 6 100-GHz WDM channels. A clearly open eye diagram is observed when the integrated EAM is driven with a 10-Gb/s electrical NRZ signal. A good transmission characteristic is exhibited with power penalties less than 2.2 dB at a bit error ratio (BER) of 10~(-10) after 44.4 km standard fiber transmission.
机译:波长可调电吸收调制分布式布拉格反射器激光器(TEMLs)具有高调制速度,小rp,低驱动电压,紧凑性和快速的波长调谐能力,是密集波分复用(DWDM)光纤通信系统中的有希望的光源。因此,提供了增加的传输容量,功能和灵活性。通过选择性区域生长(SAG)和量子阱混合(QWI)的组合技术,将带隙差高达250nm的材料集成在同一晶片上,该技术为满足光子集成电路(PIC)的需求提供了灵活且可控的平台)。首次通过这种技术制造了TEML。该组件具有以下优异特性:阈值电流为37mA,注入100mA电流和0V调制器偏置电压时的输出功率为3.5mW,消光比大于20 dB,并且耦合到单模光纤时调制器的反向电压为0V至2V,波长调谐范围为4.4nm,覆盖6个100-GHz WDM通道。当使用10 Gb / s NRZ电信号驱动集成EAM时,可以观察到清晰的睁眼图。在44.4 km标准光纤传输后,误码率(BER)为10〜(-10)时,功率损失小于2.2 dB,表现出良好的传输特性。

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